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Internal adaptation, marginal accuracy and microleakage of a pressable versus a machinable ceramic laminate veneers

机译:可压制和可加工陶瓷层压板的内部适应性,边际精度和微泄漏

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Objectives: The aim of this study was to evaluate the internal adaptation and marginal properties of ceramic laminate veneers fabricated using pressable and machinable CAD/CAM techniques. Materials and methods: 40 ceramic laminate veneers were fabricated by either milling ceramic blocks using a CAD/CAM system (group 1 n = 20) or press-on veneering using lost wax technique (group 2 n = 20). The veneers were acid etched using hydrofluoric acid, silanated, and cemented on their corresponding prepared teeth. All specimens were stored under water (37 °C) for 60 days, then received thermocycling (15,000 cycles between 5 and 55°C and dwell time of 90 s) followed by cyclic loading (100,000 cycles between 50 and 100 N) before immersion in basic fuchsine dye for 24 h. Half of the specimens in each group were sectioned in labio-lingual direction and the rest were horizontally sectioned using precision cutting machine (n = 10). Dye penetration, internal cement film thickness, and vertical and horizontal marginal gaps at the incisal and cervical regions were measured (α = 0.05). Results: Pressable ceramic veneers demonstrated significantly lower (F = 8.916, P < 0.005) vertical and horizontal marginal gaps at the cervical and incisal margins and lower cement film thickness (F = 50.921, P < 0.001) compared to machinable ceramic veneers. The inferior marginal properties of machinable ceramic veneers were associated with significantly higher microleakage values. Conclusions: Pressable ceramic laminate veneers produced higher marginal adaptation, homogenous and thinner cement film thickness, and improved resistance to microleakage compared to machinable ceramic veneers. Clinical significance: The manufacturing process influences internal and marginal fit of ceramic veneers. Therefore, dentist and laboratory technicians should choose a manufacturing process with careful consideration.
机译:目的:本研究的目的是评估使用可压和可加工CAD / CAM技术制造的陶瓷层压板的内部适应性和边缘性能。材料和方法:通过使用CAD / CAM系统(第1组= 20)研磨陶瓷块或使用失蜡技术(第2组n = 20)压制饰面来制造40个陶瓷层压薄板。使用氢氟酸对单板进行酸蚀,硅烷化并粘接在其相应的准备好的牙齿上。将所有标本在水下(37°C)下保存60天,然后进行热循环(55,000至55°C之间的15,000个循环和90 s的停留时间),然后进行循环加载(50至100 N之间的100,000个循环),然后浸入水中碱性品红染料24小时。每组的一半标本沿舌舌方向切开,其余标本用精密切割机(n = 10)水平切开。测量了切入和宫颈区域的染料渗透,内部水泥膜厚度以及垂直和水平边缘间隙(α= 0.05)。结果:与可加工陶瓷薄板相比,可压制陶瓷薄板在宫颈和切缘的垂直和水平边缘间隙明显较低(F = 8.916,P <0.005),水泥膜厚度较低(F = 50.921,P <0.001)。可加工陶瓷薄板的劣质边际性能与微渗漏值明显较高有关。结论:与可加工陶瓷薄板相比,可压陶瓷层压薄板具有更高的边缘适应性,均匀且更薄的水泥膜厚度以及更高的抗微渗漏性。临床意义:制造过程影响陶瓷贴面的内部和边缘配合。因此,牙医和实验室技术人员应仔细考虑制造过程。

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